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3D ICE ACCRETION SIMULATION FOR COMPLEX CONFIGURATION BASING ON IMPROVED MESSINGER MODEL

机译:基于改进的Messinger模型的复杂配置的3D ICE积聚模拟

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Ice accretion on 3D complex configuration is studied by numerical method. The flow field is obtained by using Fluent 6.0 with S-A turbulence model, droplet trajectories and impingement characteristics are obtained using the Eulerian approach, ice shape is calculated basing on the improved Messinger model with a new runback distribution scheme. Using the method presented in this paper, ice accretion on NACA0012 is computed, and the results are in good agreement with the available experiment data. It shows preliminarily that the improved method described in this paper is feasible. Meanwhile, ice accretion on a four-element airplane is studied. According to the analysis of the calculated result, it illustrates that using the method presented in the paper can correctly simulate the ice accretion on 3D complex configuration.
机译:通过数值方法研究了在3D复杂结构上的积冰情况。通过使用带有S-A湍流模型的Fluent 6.0获得流场,使用欧拉方法获得液滴轨迹和撞击特性,并基于具有新的反流分布方案的改进的Messinger模型计算冰的形状。使用本文提出的方法,可以计算出NACA0012上的积冰量,其结果与可用的实验数据非常吻合。初步表明本文所述的改进方法是可行的。同时,研究了四元素飞机上的积冰情况。通过对计算结果的分析,表明使用本文提出的方法可以正确模拟3D复杂构造上的积冰。

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